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耦合双波导中多波长转换的并发相位匹配

Concurrent phase-matchings for multi-wavelength conversion in coupled dual waveguides.

作者信息

Liu Jiacheng, Zhu Pingyu, Xia Gongyu, Hong Qilin, Zhu Zhihong, Qin Shiqiao, Xu Ping

出版信息

Opt Express. 2024 Aug 12;32(17):29771-29780. doi: 10.1364/OE.529888.

Abstract

Thin film lithium niobate, as a highly promising integrated photonics platform, has emerged as an ideal material platform for wavelength conversion owing to its exceptional second-order nonlinear characteristics. Here, we present the first demonstration of concurrent phase-matchings for multi-wavelength conversion in coupled thin film lithium niobate waveguides without poling technique. In the coupled dual waveguide system, employing modal phase-matching, we validate three effective phase-matching conditions for second harmonic generation, arising from additional momentum compensation due to the coupling of waveguides. Simultaneously, we confirm that phase-matching wavelengths can be tuned by adjusting the gap between waveguides. The concurrent phase-matchings in coupled dual waveguide systems can be readily extended to other nonlinear optical processes, such as difference frequency generation and spontaneous parametric down conversion. Our work contributes to advancing the exploration of efficient on-chip nonlinear optical processes within the realms of nanophotonics and quantum optics.

摘要

薄膜铌酸锂作为一个极具前景的集成光子学平台,因其卓越的二阶非线性特性,已成为用于波长转换的理想材料平台。在此,我们首次展示了在不采用极化技术的情况下,耦合薄膜铌酸锂波导中多波长转换的并发相位匹配。在耦合双波导系统中,利用模式相位匹配,我们验证了三种用于二次谐波产生的有效相位匹配条件,这些条件源于波导耦合导致的额外动量补偿。同时,我们证实了通过调整波导之间的间隙可以调谐相位匹配波长。耦合双波导系统中的并发相位匹配可以很容易地扩展到其他非线性光学过程,如差频产生和自发参量下转换。我们的工作有助于推动在纳米光子学和量子光学领域内对高效片上非线性光学过程的探索。

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